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Method of design of compounds that mimic conformational features of selected peptides

机译:模拟所选肽构象特征的化合物的设计方法

摘要

A method of rational drug design includes simulating polypeptides in a way that predicts the most probable secondary and/or tertiary structures of a polypeptide, e.g., an oligopeptide, without any presumptions as to the conformation of the underlying primary or secondary structure. The method involves computer simulation of the polypeptide, and more particularly simulating a real-size primary structure in an aqueous environment, shrinking the size of the polypeptide isobarically and isothermally, and expanding the simulated polypeptide to its real size in selected time periods. A useful set of tools, termed Balaji plots, energy conformational maps, and probability maps, assist in identifying those portions of the predicted peptide structure that are most flexible or most rigid. The rational design of novel compounds, useful as drugs, e.g., bioactive peptidomimetic compounds, and constrained analogs thereof, is thus made possible using the simulation methods and tools of the described invention.
机译:合理的药物设计方法包括以预测多肽最可能的二级和/或三级结构(例如寡肽)的方式模拟多肽,而无需任何有关基础一级或二级结构构象的假设。该方法包括多肽的计算机模拟,更具体地讲是在水性环境中模拟真实大小的一级结构,等压和等温地缩小多肽的大小,并在选定的时间段内将模拟的多肽扩展到其真实大小。一组有用的工具(称为Balaji图,能量构象图和概率图)有助于识别预测的肽结构中最灵活或最刚性的部分。因此,使用所述发明的模拟方法和工具,可以合理地设计可用作药物的新化合物,例如生物活性拟肽化合物及其受约束的类似物。

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